University of Technology Sydney, Climate Change Cluster, Ultimo, NSW, 2007, Australia.
National Sea Simulator, Australian Institute of Marine Science, Townsville, QLD, Australia.
Sci Rep. 2024 Sep 18;14(1):21826. doi: 10.1038/s41598-024-71972-5.
Organismal phenotyping to identify fitness traits is transforming our understanding of adaptive responses and ecological interactions of species within changing environments. Here we present a portable Multi-Taxa Phenotyping (MTP) system that can retrieve a suite of metabolic and photophysiological parameter across light, temperature, and/or chemical gradients, using real time bio-optical (oxygen and chlorophyll a fluorescence) measurements. The MTP system integrates three well-established technologies for the first time: an imaging Pulse Amplitude Modulated (PAM) chlorophyll a fluorometer, custom-designed well plates equipped with optical oxygen sensors, and a thermocycler. We demonstrate the ability of the MTP system to distinguish phenotypic performance characteristics of diverse aquatic taxa spanning corals, mangroves and algae based on metabolic parameters and Photosystem II dynamics, in a high-throughput capacity and accounting for interactions of different environmental gradients on performance. Extracted metrics from the MTP system can not only provide information on the performance of aquatic taxa exposed to differing environmental gradients, but also provide predicted phenotypic responses of key aquatic organisms to environmental change. Further work validating how rapid phenotyping tools such as the MTP system predict phenotypic responses to long term environmental changes in situ are urgently required to best inform how these tools can support management efforts.
机体表型分析以识别适应特征正在改变我们对物种在不断变化的环境中的适应反应和生态相互作用的理解。在这里,我们介绍了一种便携式多分类群表型分析(MTP)系统,该系统可以使用实时生物光学(氧气和叶绿素荧光)测量,在光、温度和/或化学梯度下检索一系列代谢和光生理参数。MTP 系统首次集成了三种成熟的技术:成像脉冲幅度调制(PAM)叶绿素荧光计、定制的带有光学氧气传感器的平板和热循环仪。我们展示了 MTP 系统区分不同水生生物类群(包括珊瑚、红树林和藻类)表型性能特征的能力,这些特征基于代谢参数和光系统 II 动力学,具有高通量能力,并考虑了不同环境梯度对性能的相互作用。从 MTP 系统中提取的指标不仅可以提供有关暴露于不同环境梯度的水生生物类群的性能信息,还可以提供对关键水生生物对环境变化的预测表型反应信息。进一步验证像 MTP 系统这样的快速表型分析工具如何预测原位长期环境变化的表型反应,对于最佳地了解这些工具如何支持管理工作是非常必要的。